Publication Details

Simulation Infrastructure for Automated Anesthesia During Operations

HRUBÝ, M.; GONZÁLES, A.; RUIZ NOLASCO, R.; SHARMAN, K.; SÁEZ, S. Simulation Infrastructure for Automated Anesthesia During Operations. In International Conference on Computer Aided Systems Theory (EUROCAST'19). Lecture Notes in Computer Science. Cham: Springer Verlag, 2020. p. 474-481. ISBN: 978-3-030-45092-2.
Czech title
Simulační infrastruktura pro automatizovanou anest0zii během operací
Type
conference paper
Language
English
Authors
Hrubý Martin, Ing., Ph.D. (DITS)
GONZÁLES, A.
RUIZ NOLASCO, R.
SHARMAN, K.
SÁEZ, S.
Keywords

Simulation in the loop, Control system, Medical device, Anesthesia

Abstract

This paper deals with a simulation infrastructure for comprehensive testing of safety, security and performance of a specific medical device (TOF-Cuff Controller) being developed by RGB Medical Devices. The controller is designed to monitor and regulate patients blood pressure and muscle relaxation during operations. The controller is still at the laboratory testing level of development and needs to be fully accredited by national health-care agencies before practical deployment. By having a simulation infrastructure, we can study the Controllers behaviour in various pre-defined test scenarios.

Published
2020
Pages
474–481
Proceedings
International Conference on Computer Aided Systems Theory (EUROCAST'19)
Series
Lecture Notes in Computer Science
Volume
12013
ISBN
978-3-030-45092-2
Publisher
Springer Verlag
Place
Cham
DOI
EID Scopus
BibTeX
@inproceedings{BUT168477,
  author="HRUBÝ, M. and GONZÁLES, A. and RUIZ NOLASCO, R. and SHARMAN, K. and SÁEZ, S.",
  title="Simulation Infrastructure for Automated Anesthesia During Operations",
  booktitle="International Conference on Computer Aided Systems Theory (EUROCAST'19)",
  year="2020",
  series="Lecture Notes in Computer Science",
  volume="12013",
  pages="474--481",
  publisher="Springer Verlag",
  address="Cham",
  doi="10.1007/978-3-030-45093-9\{_}57",
  isbn="978-3-030-45092-2"
}
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